首页> 外文OA文献 >Muon spin relaxation studies of the frustrated quasi-two-dimensional square-lattice spin system Cu(Cl,Br)La(Nb,Ta)(2)O-7: Evolution from spin-gap to antiferromagnetic state
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Muon spin relaxation studies of the frustrated quasi-two-dimensional square-lattice spin system Cu(Cl,Br)La(Nb,Ta)(2)O-7: Evolution from spin-gap to antiferromagnetic state

机译:沮丧的准二维方格自旋系统Cu(Cl,Br)La(Nb,Ta)(2)O-7的Muon自旋弛豫研究:从自旋间隙到反铁磁态的演化

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摘要

We report muon spin relaxation (μSR) and magnetic-susceptibility measurements on Cu(Cl, Br)La(Nb, Ta)2O7, which demonstrate: (a) the absence of static magnetism in (CuCl)LaNb2O7 down to 15 mK confirming a spin-gapped ground state; (b) phase separation between partial volumes with a spin-gap and static magnetism in (CuCl)La(Nb, Ta)2O7; (c) history-dependent magnetization in the (Nb, Ta) and (Cl, Br) substitution systems; (d) a uniform long-range collinear antiferromagnetic state in (CuBr)LaNb2O7; and (e) a decrease in Néel temperature with decreasing Br concentration x in Cu(Cl1−xBrx)LaNb2O7 with no change in the ordered Cu moment size for 0.33≤x≤1. Together with several other μSR studies of quantum phase transitions in geometrically frustrated spin systems, the present results reveal that the evolution from a spin-gap to a magnetically ordered state is often associated with phase separation and/or a first-order phase transition.
机译:我们报告了对Cu(Cl,Br)La(Nb,Ta)2O7的μ子自旋弛豫(μSR)和磁化率的测量,结果表明:(a)在(CuCl)LaNb2O7中低至15 mK的情况下没有静磁,这证实了自旋间隙基态(b)(CuCl)La(Nb,Ta)2O7中具有自旋间隙的部分体积与静磁之间的相分离; (c)(Nb,Ta)和(Cl,Br)替代系统中依赖于历史的磁化强度; (d)在(CuBr)LaNb2O7中均匀的长距离共线反铁磁态; (e)在0.33≤x≤1的情况下,随着Cu(Cl1-xBrx)LaNb2O7中Br浓度x的降低,Néel温度降低,而有序Cu矩尺寸不变。与几何受挫自旋系统中量子相变的其他几项μSR研究一起,当前结果表明,从自旋间隙到磁有序态的演化通常与相分离和/或一阶相变有关。

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